Embryonic environments influence phenotypic development, but relatively few experiments have explored the effects of natural environmental variation. We incubated eggs of the lizard Anolis sagrei under conditions that mimicked natural spatial and temporal thermal variation to determine their effects on offspring morphology and performance. Incubation temperatures mimicked two microhabitats (open, shade) at two different times of the incubation season (April, July). Egg survival, incubation duration and offspring size were influenced by interactions between habitat- and season-specific nest temperatures, and locomotor performance was influenced primarily by temporal factors. These findings highlight the importance of spatial and temporal env...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
Phenotypic integration, in which a suite of traits change in a correlated or covarying response to s...
Temperature influences the activity seasons, reproductive phenology, survival rates, and growth rate...
Embryonic environments influence phenotypic development, but relatively few experiments have explore...
Seasonal shifts in environmental conditions provide predictable cues to which organisms can respond ...
The thermal environment that lizard eggs experience during incubation can affect the size, shape and...
1. A major goal of seasonal biology is to understand how selection on phenology and the physiologica...
1. Substantial plastic variation in phenology in response to environmental heterogeneity through tim...
Phenotypic integration, in which a suite of traits change in a correlated or covarying response to s...
Recent studies have shown that incubation temperatures can profoundly affect the phenotypes of hatc...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
After laying their eggs, oviparous reptiles are reliant on the external environment to provide the r...
International audienceSubstantial plastic variation in phenology in response to environmental hetero...
Warming temperatures caused by climate change are predicted to vary temporally and spatially. For mi...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
Phenotypic integration, in which a suite of traits change in a correlated or covarying response to s...
Temperature influences the activity seasons, reproductive phenology, survival rates, and growth rate...
Embryonic environments influence phenotypic development, but relatively few experiments have explore...
Seasonal shifts in environmental conditions provide predictable cues to which organisms can respond ...
The thermal environment that lizard eggs experience during incubation can affect the size, shape and...
1. A major goal of seasonal biology is to understand how selection on phenology and the physiologica...
1. Substantial plastic variation in phenology in response to environmental heterogeneity through tim...
Phenotypic integration, in which a suite of traits change in a correlated or covarying response to s...
Recent studies have shown that incubation temperatures can profoundly affect the phenotypes of hatc...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
After laying their eggs, oviparous reptiles are reliant on the external environment to provide the r...
International audienceSubstantial plastic variation in phenology in response to environmental hetero...
Warming temperatures caused by climate change are predicted to vary temporally and spatially. For mi...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
Despite compelling evidence for substantial individual differences in cognitive performance, it is u...
Phenotypic integration, in which a suite of traits change in a correlated or covarying response to s...
Temperature influences the activity seasons, reproductive phenology, survival rates, and growth rate...